In Situ X-Ray Absorption Study of a Layered Manganese-Chromium Oxide-Based Cathode Material
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journal
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January 2002 |
Manganese oxide composite electrodes for lithium batteries
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patent
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December 2009 |
The effect of ammonia reduction on the spinel electrode materials, LiMn2O4 and Li(LiMn)O4
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journal
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October 1994 |
Electrochemical cell
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patent
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May 1994 |
Preparation and electrochemical properties of layered lithium–cobalt–manganese oxides
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journal
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March 1999 |
Manganese oxide composite electrodes for lithium batteries
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patent
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December 2007 |
The origin of electrochemical activity in Li2MnO3
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journal
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October 2002 |
Lithium metal rechargeable cells using Li2MnO3 as the positive electrode
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journal
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July 1999 |
Structural Characterization of Layered LiMnO[sub 2] Electrodes by Electron Diffraction and Lattice Imaging
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journal
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January 1999 |
Cathode Compositions for Lithium Ion Batteries
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patent-application
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June 2003 |
New intercalation compounds for lithium batteries: layered LiMnO2
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journal
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January 1999 |
Mechanism of Electrochemical Activity in Li 2 MnO 3
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journal
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May 2003 |
Manganese oxides for lithium batteries
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journal
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January 1997 |
Layered LixMn1 − yNiyO2 intercalation electrodes
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journal
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January 2000 |
Lix(Mn1 − yCoy)O2 intercalation compounds as electrodes for lithium batteries: influence of ion exchange on structure and performance
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journal
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January 2001 |
Lithium manganese oxides from Li2MnO3 for rechargeable lithium battery applications
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journal
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June 1991 |
Pre-conditioned layered electrodes for lithium batteries
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journal
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February 2006 |
Electrochemical cell
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patent
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August 1993 |
Preparation of a new crystal form of manganese dioxide: λ-MnO2
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journal
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September 1981 |
The versatility of MnO2 for lithium battery applications
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journal
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March 1993 |
Cathode compositions for lithium-ion batteries
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patent
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November 2005 |
Nonstoichiometric layered Li x Mn y O 2 intercalation electrodes—a multiple dopant strategy
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journal
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January 2003 |
Defect spinels in the system Li2O.yMnO2 (y>2.5): A neutron-diffraction study and electrochemical characterization of Li2Mn4O9
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journal
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May 1990 |
Origin of the Capacity of Spinel LiMn[sub 2−y]Li[sub y]O[sub 4±δ] (0≤y≤0.15) in the 5 V Region
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journal
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January 2003 |
Solid state cell wherein an anode, solid electrolyte and cathode each comprise a cubic-close-packed framework structure
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patent
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March 1985 |
Lithiated oxide materials and methods of manufacture
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patent
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December 2003 |
Electrode for lithium secondary battery and lithium secondary battery and method of manufacturing same
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patent-application
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June 2003 |
Lithium metal oxide electrodes for lithium cells and batteries
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patent
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January 2004 |
Manganese oxide composite electrodes for lithium batteries
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patent
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September 2010 |
Structural aspects of lithium-manganese-oxide electrodes for rechargeable lithium batteries
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journal
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February 1990 |
The significance of the Li2MnO3 component in ‘composite’ xLi2MnO3·(1−x)LiMn0.5Ni0.5O2 electrodes
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journal
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October 2004 |
Layered xLiMO2·(1−x)Li2M′O3 electrodes for lithium batteries: a study of 0.95LiMn0.5Ni0.5O2·0.05Li2TiO3
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journal
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March 2002 |
Electrochemistry Beyond Mn[sup 4+] in Li[sub x]Mn[sub 1−y]Li[sub y]O[sub 2]
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journal
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January 2004 |
Lithium metal oxide electrodes for lithium cells and batteries
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patent
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January 2004 |
Electrochemical and Structural Properties of xLi2M‘O3 ·(1− x )LiMn0.5Ni0.5O2 Electrodes for Lithium Batteries (M‘ = Ti, Mn, Zr; 0 ≤ x ⩽ 0.3)
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journal
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May 2004 |